CDS

Accession Number TCMCG022C29944
gbkey CDS
Protein Id XP_039159297.1
Location join(8632437..8632674,8632677..8632949,8633529..8633797,8634064..8634301,8634883..8635203,8644394..8644429,8644432..8644478,8644618..8644728,8644877..8645181,8645490..8645558,8645560..8645754,8645888..8645949,8645952..8646114,8646116..8646644)
Gene LOC104423496
GeneID 104423496
Organism Eucalyptus grandis

Protein

Length 956aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA698663
db_source XM_039303363.1
Definition LOW QUALITY PROTEIN: linoleate 13S-lipoxygenase 2-1, chloroplastic [Eucalyptus grandis]

EGGNOG-MAPPER Annotation

COG_category E
Description Plant lipoxygenase may be involved in a number of diverse aspects of plant physiology including growth and development, pest resistance, and senescence or responses to wounding
KEGG_TC -
KEGG_Module M00113        [VIEW IN KEGG]
KEGG_Reaction R03626        [VIEW IN KEGG]
R07864        [VIEW IN KEGG]
R07869        [VIEW IN KEGG]
KEGG_rclass RC00561        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K00454        [VIEW IN KEGG]
EC 1.13.11.12        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00591        [VIEW IN KEGG]
ko00592        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko01110        [VIEW IN KEGG]
map00591        [VIEW IN KEGG]
map00592        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map01110        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGCTACAGCACATGCCACAGTTTTCTTCCTCCTCTCCCTCTATAAAAACCCCTAGACCAACTCTCCAAAATCCCATCAACCCAAAGTCCCCAATAACCATTGTTTTGAGCCATTGTTGTCTTCACCAACTTTTTACTTCACATCTCTCCTTCAAGAACACAGCAAAAAAGATCATCACTGCCATCATCATGTTGAAGCCACAGCTTCATCAATCCCAATTTGCCTCCCCAACCTTGTCCTTAAGCAAGCCATTTAGCCAAGGCAATGGCAGGATCGTTGGTTTTCGGGTACGATCCACGCCTGTGCTCCAAAAGAGCCGTAGAAGCGCTAAAGTAGGGCTTGTCTCGCGCAAGATCAGTGCGACAATGAGCCCAATCACTACCGAGAAGTTGCTGTCAGTTAAAGTGGTAGTGACTCTGAAAGAGAGCCCCGGTGGTTTGCTCTCGAAAATCGGGATAAAGGGAGGGGTCGATCTCCTCTTGGAGCTTGTTAGTGCTGAGCTTGACCCCAAGACGGGACAAGAGAAGGGTACAATCAAAGGGTACACGCGCAAGAAGAGCCAGAACGCGGAGGAGGCAACGTATGAGTGTGAGTTCGAGGTCGGAGAGGGGTTCGGGGAGGTCGGGGCGATTTTTGTGGAGAACGAGAACCGCAAGGAGATATACCTCAAGGACATCATCCTCGACGGGTTCGCAGGTGATCCTCTCAGCATCACCTGCAACTCGTGGGTTGAGTCCAAGTTCGATAACCCGCAAAAGAGGGTCTTCTTCACCAATAAGTGCTATTTACCGAAGGAAACGCCGAGCGGGCTGAGGAGGCTGAGAGAGGAGGAGCTGGCGATCCTGCGAGGGAACGGTCAAGACGAGAGAAAGTCGCACGAGAGGATATACGATTACGATGTGTACAATGACCTCGGGAATCCCGACAGCGGCGTGGATAAGAAGAGGCCAGTGCTCGGTGGAAAAGAGCTTCCGTACCCCAGACGATGCCGGACCGGGCGCCCTCGGTGCGATACCGATCCGCAATCGGAATCGAGGAGTGGAAGCACATACGTGCCTCGAGATGAACAGTTCTCGCCGATAAAGAACTTGACGTTCTCCGCGAAGACTGTGTACTCGGTGGTGCATGCACTGGCGCAGTCGCTAGATACGGTGATAGTCGACTCCGACCTAGGGTTCCCCTACTTCTCCGCCATCGACGATCTGTTCAACGAAGGTGTCAACTTGCCCCCGTTGCAGAAGCAAGGCTTCCTCAAGGACCTCTTGCCCCGGCTCGTCAAAACCGTCGCCGATGCCTCCCAAGATGTCTTGCGCTTCGAAACCCCTGAAACCATGATCCGAGACCGATTTTTTTGGTTTAGTGATGAAGAGTTTGCACAAACTCTAGCAGAATTAACCCCTATGCGATCCAAAGTTGTCACGGAATGGCCCTTGAGGAGTGAGCTTGATCCTAAGATCTACGGTGCATCTGAATCGGCTATCACAACGGAGATTATCGAAAGGGAAATCAAAGGCTTCATGACAGTAACTGAGGCCATCAAGCAAAAGAAGCTGTTCATGCTGGACTACCACGACCTGTTCCTACCATACGTGAACAAAGTGAGACAACTCAAGGGGACAACCTTGTACGGGTCGAGAACGCTCTTCTTCCTGACCCCAGATGAGACGTTGAAACCACTTGCCATCGAGCTCACACGGCCGCCGACCGATGACGGTAAGCCGCAATGGAAGCAGGTGTTCACCCCGTCGTGCAGCTCCACTGGCAGGTGGCTTTGGCGGCTCGCCAAGGCCCATGTCCTTGCCCATGACTCTGGATACCACCAGCTCGTCAGCCACTGGTTGCGGACTCATTGTGCCACGGAACCCTATATAATAGCAACAAACCGGCAACTGAGTGAGATGCACCCCTATAAGTTGCTGCACCCGCACTTCCGGTACACGATGCAGATCAATGCGCTGGCTCGCGGGTTTCTGATCAATGGCGACGGGATCATCGAGAGCTCCTTCTCTCCCGGCAAGTATTCCATGGAGCTCAGCGCCGTCGCCTATGACAAGCAGTGGCAATTCGACTTACAAGGCTTGCCCAATGACTTAATTAGCAGGGGATTGGCAGTGGAAGACCCGACGGCACCCCATGGCCTCAGGCTAGCGATCGAGGACTACCTCGCCAACGATGGCCTCCTCTTGTGGGACGCCATCAAGGAGTGGGTCACCGACTACGTCAGCCACTACTACCCCGACCCAAGCCGCATTGCGTCGGACAAGGAGCTCCAGTCCTGGTGGACTGAGATCCGGACCGTCGGCCATGGTGACAAGAAAGACTCCCCGTGGCCCGACCTCAAGACCCCGTCCGACCTCGTCCACATTATCACCACCATGGTCTGGGTCACCTCCGGCCACCATGCTGCTGTCAACTTTGGCCAGTACACCTATGCCGGTTACTTCCCGAACCGGCCCACCATCGCCCGAACCAAGATGCCCGTCGAGGACCCGACCGAGGAAGAGCTCAAGATCTTCTGGGACAAGCCTGAAACCACACTCCTCACGTGCTTCCCGTCACAGATACAGGCGACCAAGGTGATGGCAATCCTCGACGTGCTGTCGAACCACTCGCCAGATGAGGAGTATCTGGGACAGGATCCGGAACCAGCGTTGAAAGAGGAGCCGGCGATAAAGACAGCATTCGAGAGGTTCAGCGGGAGGCTGAAGGAGCTTGAGGGCATCATCGACAAGAGGAACACCGACCAAAGGTTTAAGAATCGAAGTGGAGCCGGGATCGTGCCGTACGAACTCTTGAAGCCATTCTCCGAGCCAGGCGTGACAGGGAAGGGAGTTCCATACAGCATTTCCATCTGA
Protein:  
MLQHMPQFSSSSPSIKTPRPTLQNPINPKSPITIVLSHCCLHQLFTSHLSFKNTAKKIITAIIMLKPQLHQSQFASPTLFXLSKPFSQGNGRIVGFRVRSTPVLQKSRRSAKVGLVSRKISATMSPITTEKLLSVKVVVTLKESPGGLLSKIGIKGGVDLLLELVSAELDPKTGQEKGTIKGYTRKKSQNAEEATYECEFEVGEGFGEVGAIFVENENRKEIYLKDIILDGFAGDPLSITCNSWVESKFDNPQKRVFFTNKCYLPKETPSGLRRLREEELAILRGNGQDERKSHERIYDYDVYNDLGNPDSGVDKKRPVLGGKELPYPRRCRTGRPRCDTDPQSESRSGSTYVPRDEQFSPIKNLTFSAKTVYSVVHALAQSLDTVIVDSDLGFPYFSAIDDLFNEGVNLPPLQKQGFLKDLLPRLVKTVADASQDVLRFETPETMIRDRFFWFSDEEFAXQTLAELTPMRSKVVTEWPLRSELDPKIYGASESAITTEIIEREIKGFMTVTEAIKQKKLFMLDYHDLFLPYVNKVRQLKGTTLYGSRTLFFLTPDETLKPLAIELTRPPTDDGKPQWKQVFTPSCSSTGRWLWRLAKAHVLAHDSGYHQLVSHWLRTHCATEPYIIATNRQLSEMHPXYKLLHPHFRYTMQINALARGFLINGDGIIESSFSPGKYSMELSAVAYDKQWQFDLQGLPNDLISRGLAVEDPTAPHGLRLAIEDYPXANDGLLLWDAIKEWVTDYVSHYYPDPSRIASDKELQSWWTEIRTVGHGDKKDSPXWPDLKTPSDLVHIITTMVWVTSGHHAAVNFGQYTYAGYFPNRPTIARTKMPVEDPTEEELKIFWDKPETTLLTCFPSQIQATKVMAILDVLSNHSPDEEYLGQDPEPALKEEPAIKTAFERFSGRLKELEGIIDKRNTDQRFKNRSGAGIVPYELLKPFSEPGVTGKGVPYSISI